Deak J C, Templeton D J
Institute of Pathology, Case Western Reserve University, Cleveland OH 44106, USA.
Biochem J. 1997 Feb 15;322 ( Pt 1)(Pt 1):185-92. doi: 10.1042/bj3220185.
MEK kinase 1 (MEKK1) shares sequence identity with the yeast kinases Ste11 and Byr2, and is capable of phosphorylation and activation of both mitogen-activated protein/extracellular signal-related protein kinase (MAP/ERK) kinase (MEK) and stress-activated protein kinase (SAPK)/ERK kinase (SEK) in vitro. In vivo, however, MEKK1 predominantly activates the SEK/SAPK kinase cascade. Mechanisms of activation of MEKK1 are unclear. We have identified a major site of autophosphorylation (Thr-575) within the 'activation loop' of MEKK1 between the kinase subdomains VII and VIII. Phosphatase treatment of a constitutively active MEKK1 decreased kinase activity by 59%. Dephosphorylated T575 was rapidly re-(auto)phosphorylated by MEKK1. Mutation of T575 to alanine decreased MEKK1 transphosphorylation activity with a SEK substrate to approx. 30% of wild-type. Mutation of a second threonine residue (Thr-587) to alanine eliminated the phosphorylation of MEK or SEK substrate but not autophosphorylation. MEKK1 autophosphorylation is an intramolecular reaction because active MEKK1 cannot transphosphorylate a kinase-inactive MEKK1. Inactive MEKK1 was not phosphorylated on Thr-575 within cells, suggesting that the phosphorylation of Thr-575 in vivo results from autophosphorylation rather than phosphorylation by an upstream kinase. Autoactivation of MEKK1 via autophosphorylation of Thr-575 might be an immediate response to initial kinase activation through non-phosphorylation mechanisms.
丝裂原活化蛋白激酶激酶1(MEKK1)与酵母激酶Ste11和Byr2具有序列同源性,并且在体外能够磷酸化并激活丝裂原活化蛋白/细胞外信号相关蛋白激酶(MAP/ERK)激酶(MEK)和应激激活蛋白激酶(SAPK)/ERK激酶(SEK)。然而,在体内,MEKK1主要激活SEK/SAPK激酶级联反应。MEKK1的激活机制尚不清楚。我们已经确定了MEKK1在激酶亚结构域VII和VIII之间的“激活环”内的一个主要自磷酸化位点(苏氨酸-575)。用磷酸酶处理组成型活性MEKK1可使激酶活性降低59%。去磷酸化的T575会被MEKK1迅速重新(自)磷酸化。将T575突变为丙氨酸会使MEKK1与SEK底物的转磷酸化活性降低至野生型的约30%。将第二个苏氨酸残基(苏氨酸-587)突变为丙氨酸可消除MEK或SEK底物的磷酸化,但不影响自磷酸化。MEKK1自磷酸化是一种分子内反应,因为活性MEKK1不能转磷酸化无激酶活性的MEKK1。无活性的MEKK1在细胞内的苏氨酸-575位点未被磷酸化,这表明体内苏氨酸-575的磷酸化是自磷酸化的结果,而不是由上游激酶磷酸化的。通过苏氨酸-575的自磷酸化实现的MEKK1自激活可能是对通过非磷酸化机制的初始激酶激活的即时反应。